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1.
J Clin Diagn Res ; 8(1): 236-8, 2014 Jan.
Artículo en Inglés | MEDLINE | ID: mdl-24596784

RESUMEN

AIM: The aim of this study is to compare the shear bond strength between fiber reinforced composite post with three different composite core materials. MATERIALS AND METHODS: The materials used for the study were: 30 maxillary central incisors, pre fabricated fiber reinforced composite post (postec plus posts), Multi-core heavy body, Ti-core, Fluoro-core, Etchant gel, Silane coupling agent, Dentin bonding agent, Standardized gutta percha points, Rely-X dual cure composite resin. A total of 30 human maxillary central incisor were selected for this study. They were divided into three groups of 10 specimens each namely A, B and C. RESULTS: The results obtained were analyzed by using one way analysis (ANOVA) and Tukey Honestly Significant Difference and they showed highest mean shear bond strength for group C when compared with group A and group B. There is no significant difference in the shear bond strength values between group A and group B. CONCLUSION: The teeth restored with multicore HB showed highest shear bond strength. The teeth restored with Fluoro core showed lowest shear bond strength. No statistically significant difference exists between the shear bond strength values between Ti-core and Fluoro-core.

2.
J Indian Prosthodont Soc ; 13(3): 196-204, 2013 Sep.
Artículo en Inglés | MEDLINE | ID: mdl-24431734

RESUMEN

Due to anatomical and surgical constrains the implant placement may not be parallel to each other always. Non-parallel implants are subjected to detrimental stresses at implant bone interface. Also depending on type of implant material i.e. titanium or zirconium, stresses tend to vary due to change in physical and mechanical properties. Hence stress analysis at implant bone interface between different parallel and non-parallel implants becomes significant. Evaluation and comparison of stress distribution in the bone around two parallel and non-parallel titanium and zirconium dental implants on axial and non-axial loading supporting three unit fixed prosthesis. Three dimensional finite element models (M1, M2, M3) were made of three differently angulated implants in ANSYS (11.0 Version) software and P4 processor with a speed of 3 GHz and 3 Gb RAM hardware, common for titanium and zirconium implants. Stress around the implants was analyzed on an axial load of 200 N and a non-axial load of 50 N. In both titanium and zirconium implants on axial loading in cortical bone, higher stresses were observed in M3 followed by M2 and M1. On non-axial loading higher stresses were observed in M2, followed by M3 and M1. In both titanium and zirconium implants on axial and non-axial loading in cancellous bone stresses were higher in M3 followed by M2 and M1. Zirconium implants showed lower stresses in cortical bone and higher stresses in cancellous bone compared to titanium implants. Over all Stresses in the bone were more due to titanium implants than zirconium implants. Zirconium implants led to lower peri-implant stresses than titanium implants.

3.
J Contemp Dent Pract ; 13(1): 48-54, 2012 Jan 01.
Artículo en Inglés | MEDLINE | ID: mdl-22430693

RESUMEN

AIM: To compare and evaluate few physical properties of epoxy resin, resin-modified gypsum and conventional type-IV gypsum die material. MATERIALS AND METHODS: In the present study, dimensional accuracy, surface detail reproduction and transverse strength of three die materials like epoxy resin (Diemet-E), resin-modified gypsum (Synarock) and conventional type-IV gypsum (Ultrarock) are analyzed. For dimensional accuracy, master die (Bailey's die) is used and calibrations were made with digital microscope. For surface detail reproduction and transverse strength, rectangular stainless steel master die (Duke's die) was used and calibrations were made with Toolmaker's microscope and Instron universal testing machine respectively. One-way analysis of variance (ANOVA) was performed on the means and standard deviation for groups of each test. RESULTS: The results of the study showed statistically significant difference among these materials in dimensional accuracy, surface detail reproduction and transverse strength. CONCLUSION: Epoxy resin exhibited superiority in dimensional accuracy, surface detail reproduction and transverse strength and is nearest to the standards of accurate die material.


Asunto(s)
Sulfato de Calcio/química , Revestimiento para Colado Dental/química , Materiales Dentales/química , Resinas Epoxi/química , Modelos Dentales , Resinas Sintéticas/química , Aleaciones , Sulfato de Calcio/síntesis química , Fenómenos Químicos , Cobre , Revestimiento para Colado Dental/síntesis química , Materiales Dentales/síntesis química , Análisis del Estrés Dental/instrumentación , Resinas Epoxi/síntesis química , Humanos , Humedad , Ensayo de Materiales , Polvos , Resinas Sintéticas/síntesis química , Acero Inoxidable , Estrés Mecánico , Propiedades de Superficie , Factores de Tiempo , Vacio , Agua/química , Zinc
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